Root-knot nematode resistance genes in tomato and their potential for future use

The gene Mi, which confers resistance to several species of root-knot nematode, is present in many modern tomato cultivars. Recent cloning of this gene revealed that it encodes a member of the plant resistance protein family characterized by the presence of a putative nucleotide binding site and a l...

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Veröffentlicht in:Annual review of phytopathology 1998-01, Vol.36 (1), p.277-293
1. Verfasser: Williamson, V.M. (University of California, Davis, CA.)
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Sprache:eng
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Zusammenfassung:The gene Mi, which confers resistance to several species of root-knot nematode, is present in many modern tomato cultivars. Recent cloning of this gene revealed that it encodes a member of the plant resistance protein family characterized by the presence of a putative nucleotide binding site and a leucine-rich repeat. Analysis of transgenic plants revealed the unexpected result that Mi also confers resistance to potato aphids. Although highly effective in many conditions, Mi fails to confer resistance at high soil temperature, and Mi-virulent nematode isolates have been identified in many areas of the world. These findings have stimulated efforts to identify new sources of root-knot nematode resistance. Resistance genes that differ from Mi in properties and genetic position have been identified in Lycopersicon peruvianum. These genes, as well as the cloned Mi gene, provide a resource for broadening the base of root-knot nematode resistance in tomato and other crops.
ISSN:0066-4286
1545-2107
DOI:10.1146/annurev.phyto.36.1.277